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Influence of the Layer Directions on the Properties of 316L Stainless Steel Parts Fabricated through Fused Deposition of Metals

机译:层方向对金属熔融沉积制备316L不锈钢零件性能的影响

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摘要

Metal specimens were fabricated via the fused deposition of metals (FDMet) technique with a filament composed of the 316L stainless steel particles and an organic binder. This process was adopted due to its potential as a low-cost additive manufacturing process. The objective of this study is to investigate the influence of the processing conditions—layer directions and layer thicknesses—on the mechanical and shrinkage properties of the metal components. The specimens were printed in three different layer directions. The highest ultimate strength of 453 MPa and strain at break of 48% were obtained in the specimen printed with the layer direction perpendicular to the tensile direction. On the other hand, the specimen printed in the layer direction parallel to the tensile direction exhibited poor mechanical properties. The reason for the anisotropy of the properties was investigated through systematic SEM observations. The observations revealed the presence of segregated binder domains in the filaments. It was deduced that the binder domain was oriented in the direction perpendicular to that of the layer and remained as oriented voids even after sintering. The voids oriented perpendicular to the tensile direction act as defects that could cause stress concentration, thus resulting in poor mechanical properties.
机译:金属标本是通过金属熔合沉积(FDMet)技术制成的,其丝由316L不锈钢颗粒和有机粘合剂组成。由于其作为低成本增材制造工艺的潜力而被采用。这项研究的目的是研究加工条件(层的方向和层的厚度)对金属部件的机械性能和收缩性能的影响。在三个不同的层方向上打印样品。在以垂直于拉伸方向的层方向印刷的样品中,获得了453 MPa的最高极限强度和48%的断裂应变。另一方面,在平行于拉伸方向的层方向上印刷的样品表现出较差的机械性能。通过系统的SEM观察研究了性能各向异性的原因。观察结果表明,长丝中存在分离的结合剂域。可以推断,粘合剂区域在垂直于该层的方向上取向并且甚至在烧结后仍保持为取向的空隙。垂直于拉伸方向取向的空隙是可能引起应力集中的缺陷,因此导致较差的机械性能。

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